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首页> 外文期刊>Journal of King Saud University-Engineering Sciences >Effect of heat treatment on corrosion behavior of duplex coatings
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Effect of heat treatment on corrosion behavior of duplex coatings

机译:热处理对双相涂层腐蚀行为的影响

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摘要

In the present paper, duplex WC-Co/NiCrAlY coating is coated onto Ti6Al4V substrate and vacuum heat treatment is employed to investigate the corrosion behavior of heat treated samples as well as Ti6Al4V substrate for comparison. In this duplex coating system, High Velocity Oxy Fuel (HVOF) process is used to deposit NiCrAlY interlayer with a constant thickness of 200μm and WC-Co ceramic top layer with varying thickness of 250μm, 350μm and 450μm deposited by Detonation Spray (DS) process. Different heat treatment temperatures (600–1150°C) were employed for the coated samples to study the microstructure and the effect on corrosion resistance of the duplex coatings. Potentiodynamic polarization tests were carried to investigate the corrosion performance of duplex coated heat treated samples and the substrate in Ringer’s solution at 37°C and prepared the pH to 5.7. The microstructure upon corrosion after heat treatment was characterized by SEM analysis to understand the corrosion behavior. The results disclosed that at all heat treatment temperatures, all the coated samples exhibited better corrosion resistance than the base substrate. However, during 950°C and 1150°C heat treatment temperatures, it was observed highest corrosion potential than 600°C and 800°C. The 350μm thickness, coated sample exhibited highest corrosion resistance compared to other two coated samples and the substrate at all heat treatment temperatures.
机译:在本文中,将WC-Co / NiCrAlY双面涂层涂覆在Ti6Al4V基底上,并采用真空热处理研究热处理后的样品以及Ti6Al4V基底的腐蚀行为,以进行比较。在该双涂层系统中,采用高速氧燃料(HVOF)工艺沉积恒定厚度为200μm的NiCrAlY中间层,并通过爆轰喷涂(DS)工艺沉积厚度为250μm,350μm和450μm的WC-Co陶瓷顶层。涂层样品采用了不同的热处理温度(600-1150°C)来研究双相涂层的微观结构及其对耐蚀性的影响。进行了电位动力学极化测试,以研究在37°C的林格氏溶液中双面涂层热处理过的样品和基材的腐蚀性能,并将pH值调至5.7。通过SEM分析表征热处理后腐蚀后的微观结构,以了解腐蚀行为。结果表明,在所有热处理温度下,所有涂覆的样品均显示出比基础基材更好的耐腐蚀性。但是,在950°C和1150°C的热处理温度下,发现最高的腐蚀电位高于600°C和800°C。在所有热处理温度下,与其他两个涂层样品和基材相比,厚度为350μm的涂层样品表现出最高的耐腐蚀性。

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